Gravity modes on rapidly rotating accreting white dwarfs and their variation after dwarf novae
arXiv:2305.03809 · doi:10.3847/1538-4357/acd1df
Abstract
Accreting white dwarfs in Cataclysmic variables (CVs) show short-period (tens of minutes) brightness variations that are consistent with non-radial oscillations similar to gravity (g) modes observed in isolated white dwarfs (WDs). GW Librae, a dwarf nova, was the first CV in which non-radial oscillations were observed and continues to be the best studied accreting WD displaying these pulsations. Unlike isolated WDs, accreting WDs rotate rapidly, with spin periods comparable to or shorter than typical low-order oscillation periods. Accreting WDs also have a different relationship between their interior temperature and surface temperature. The surface temperature of an accreting WD varies on a months to year timescale between dwarf novae accretion events, allowing study of how this temperature change effects g-mode behavior. Here we show results from adiabatic seismological calculations for accreting WDs, focusing on low-order () modes. We demonstrate how g-modes vary in response to temperature changes in the subsurface layers due to a dwarf nova accretion event. These calculations include rotation non-perturbatively, required by the high spin rate. We discuss the thermal history of these accreting WDs, and compare the seismological properties with and without rotation. Comparison of -mode frequencies to observed objects may allow inference of features of the structure of the WD such as mass, surface abundance, accretion history, and more. The variation of mode frequencies during cooling after an outburst provides a novel method of identifying modes.
18 pages, 13 figures, Accepted to ApJ
References in corpus (14)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Pulsating White Dwarf Stars and Precision Asteroseismology
- Angular momentum transport by heat-driven g-modes in slowly pulsating B stars
- The Ages of the Thin Disk, Thick Disk, and the Halo from Nearby White Dwarfs
- Population Synthesis of Cataclysmic Variables: I. Inclusion of Detailed Nuclear Evolution
- Pulsational Instabilities in Accreting White Dwarfs
- 123-321 Models of Classical Novae
- HST/STIS Spectroscopy and Modeling of the Long Term Cooling of WZ Sagittae following the July 2001 Outburst
- Binary Interaction Dominates Mass Ejection in Classical Novae
- HST and Optical Observations of Three Pulsating Accreting White Dwarfs in Cataclysmic Variables
- Mass Transfer and Stellar Evolution of the White Dwarfs in AM CVn Binaries
- Probing the structure of Kepler ZZ Ceti stars with full evolutionary models-based asteroseismology
- R-mode oscillations in accreting white dwarfs in cataclysmic variables
- New DA white dwarf models for asteroseismology of ZZ Ceti stars